US11702028B2 - Seat airbag for vehicle - Google Patents
Seat airbag for vehicle Download PDFInfo
- Publication number
- US11702028B2 US11702028B2 US17/246,974 US202117246974A US11702028B2 US 11702028 B2 US11702028 B2 US 11702028B2 US 202117246974 A US202117246974 A US 202117246974A US 11702028 B2 US11702028 B2 US 11702028B2
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- Prior art keywords
- cushion
- airbag
- deployed
- side cushion
- storage space
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Images
Classifications
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- B60R21/00—Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
- B60R21/02—Occupant safety arrangements or fittings, e.g. crash pads
- B60R21/16—Inflatable occupant restraints or confinements designed to inflate upon impact or impending impact, e.g. air bags
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- B60R21/02—Occupant safety arrangements or fittings, e.g. crash pads
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B60R2021/003—Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks characterised by occupant or pedestian
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B60R21/02—Occupant safety arrangements or fittings, e.g. crash pads
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B60R21/02—Occupant safety arrangements or fittings, e.g. crash pads
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60R—VEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
- B60R21/00—Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
- B60R21/02—Occupant safety arrangements or fittings, e.g. crash pads
- B60R21/16—Inflatable occupant restraints or confinements designed to inflate upon impact or impending impact, e.g. air bags
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60R—VEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
- B60R21/00—Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
- B60R21/02—Occupant safety arrangements or fittings, e.g. crash pads
- B60R21/16—Inflatable occupant restraints or confinements designed to inflate upon impact or impending impact, e.g. air bags
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- B60R2021/23533—Inflatable members characterised by their material characterised by the manufacturing process
- B60R2021/23538—Sewing
Definitions
- the present invention relates to a seat airbag for a vehicle having a side cushion and a front cushion, and more particularly, to a structure in which a front cushion in a folded state is accommodated at the front portion of a side cushion and a technology about the time difference deployment operation of a side cushion and a front cushion.
- Autonomous vehicles are smart vehicles that incorporate autonomous driving technology that allows drivers to go to their destination by themselves without directly operating a steering wheel, accelerator pedal, brake, etc., and have been rapidly developed in recent years.
- a driver can select a relaxation mode in which the driver takes a break without driving himself while driving, and in the relaxation mode situation, the movement, rotation and posture of a seat can be changed in various ways according to the needs of a passenger.
- an airbag suitable for an autonomous vehicle in which a position, rotation, and seating state are changed in various ways according to a passenger's request there is a technology of a seat airbag in which an airbag cushion is deployed from a seat.
- the seat airbag includes a side cushion that is deployed forward from a seatback and covers the side of a passenger, and a front cushion that is deployed from the side cushion to the front of the passenger, and relates to a technology that can further enhance the protection effect of passengers by effectively restraining all the passengers' omnidirectional behavior, including the lateral behavior, forward behavior, and diagonal behavior using the side cushion and front cushion.
- the side cushion and the front cushion must be sequentially deployed with a time difference.
- the front cushion is deployed too quickly, the front cushion is caught between the passenger and a vehicle door or between the passenger and a center console, increasing the probability of deployment failure due to interference. To prevent this, it would be desirable to start the deployment of the front cushion after the deployment of the side cushion has progressed to some extent.
- the present invention is a configuration in which a cushion storage space capable of accommodating a front cushion is provided at the front portion connected to the front cushion in a side cushion, and the bellow folded front cushion is inserted and accommodated into the cushion storage space.
- the present invention may provide a seat airbag for a vehicle including a side cushion that is deployed to protrude forward from a seatback and is positioned on a side of a passenger, and a front cushion that is deployed to protrude from the side cushion to a front of the passenger.
- the front cushion may be connected to a front portion of the side cushion based on a deployed state of the side cushion; at the front portion of the side cushion, a cushion storage space may be provided inside the side cushion; the front cushion may be inserted into the cushion storage space in a folded state, and may protrude out of the cushion storage space by airbag gas and may be deployed in front of the passenger.
- the front cushion may be bellow folded for quick deployment and may be accommodated in the cushion storage space.
- a first separator that divides an inner space of the side cushion while determining a thickness of a deployed cushion may be installed in combination with the side cushion inside the side cushion; and a plurality of first vent holes for controlling a flow of the airbag gas may be positioned in the first separator.
- a connection passage for connection with the front cushion may be positioned at the front portion of the side cushion; a second separator that determines a thickness of a deployed cushion may be installed in combination with the side cushion at a rear of the connection passage; and a second vent hole for controlling a flow of the airbag gas supplied to the front cushion may be positioned in the second separator.
- a first separator having a first vent hole and a second separator having a second vent hole may be installed in combination with the side cushion inside the side cushion while the second separator is located in a front position of the first separator based on a state in which the side cushion is deployed; and a total cross-sectional area of the first vent hole may be larger than a total cross-sectional area of the second vent hole.
- the side cushion and the front cushion may be sewn and coupled along the circumference of the connection passage; a space up to the connection passage based on the second separator may become the cushion storage space; and the cushion storage space may be connected to the front cushion through the connection passage.
- the side cushion from a top to a bottom based on deployed state, may be vertically divided into a head protection area, a shoulder protection area, a chest protection area, an abdominal protection area, and a pelvic protection area; and when a reference line connecting the head protection area and the pelvic protection area up and down in a front of the side cushion is determined, an area protruding toward a front of the reference line may become the front portion of the side cushion on which the connection passage is formed.
- the second separator may be installed to match the reference line or is installed to be positioned in front of the reference line within a range that sufficiently secures the cushion storage space.
- the cushion storage space may be formed by the second separator that is installed parallel to a vertical sewing line that combines the side cushion and the front cushion, a plurality of the second separators that is installed in a horizontal direction with respect to the vertical sewing line, a plurality of the second separators that is installed in a diagonal direction with respect to the vertical sewing line, or a plurality of coupling points that is coupled to connect both sides of the side cushion in a rear position of the connection passage.
- the present invention may provide a seat airbag for a vehicle including a side cushion that is deployed to protrude forward from a seatback and is positioned on a side of a passenger, and a front cushion that is deployed to protrude from the side cushion to a front of the passenger.
- the side cushion in an event of an accident, the side cushion may be first deployed by a pressure of an airbag gas; and the front cushion starts to be deployed with a time difference after the side cushion has started to be deployed.
- the front portion of the side cushion that has started to be deployed may be located in front of the passenger, the front cushion starts to be deployed by the pressure of the airbag gas.
- the seat airbag for a vehicle may be a configuration in which a side cushion is deployed to protrude forward from a seatback to protect the side of a passenger, and a front cushion protrudes from the side cushion in front of the passenger to protect the front of the passenger.
- a side cushion is deployed to protrude forward from a seatback to protect the side of a passenger
- a front cushion protrudes from the side cushion in front of the passenger to protect the front of the passenger.
- the embodiment according to the present invention may be configured with an upper tether and a lower tether that have a predetermined area in order to exert a strong restraint force restraining the deployments of the side cushion and the front cushion.
- an upper tether and a lower tether that have a predetermined area in order to exert a strong restraint force restraining the deployments of the side cushion and the front cushion.
- the embodiment according to the present invention may be a configuration in which both the side cushion and the front cushion can cover and protect the portion of a shoulder having relatively high rigidity among the body parts of the passenger.
- the embodiment according to the present invention may be a configuration in which a first separator having a first vent hole is installed inside the side cushion, a second separator having a second vent hole is installed in the connection portion of the side cushion and the front cushion, and the total cross-sectional area of the first vent hole is larger than the total cross-sectional area of the second vent hole.
- the embodiment according to the present invention may be a configuration in which a cushion storage space capable of accommodating the front cushion is provided at a front portion connected to the front cushion in the side cushion, and the bellow folded front cushion is inserted and accommodated into the cushion storage space.
- a cushion storage space capable of accommodating the front cushion is provided at a front portion connected to the front cushion in the side cushion, and the bellow folded front cushion is inserted and accommodated into the cushion storage space.
- FIG. 1 is a perspective view of a seat airbag for a vehicle in a deployed state according to the present invention.
- FIGS. 2 to 4 are a plan view, a front view, and a side view of FIG. 1 .
- FIG. 5 is a view of a side cushion and a front cushion in a separated state according to the present invention.
- FIG. 6 is a view showing a state in which a front cushion is accommodated in a cushion storage space of a side cushion and the front cushion is deployed according to the present invention.
- FIG. 7 is a view showing a structure in which a cushion storage space is formed according to the present invention, for each embodiment.
- FIG. 8 is a view for explaining a state in which a side cushion and a front cushion are deployed according to the present invention.
- FIGS. 9 to 10 are views for explaining the deployment shapes of a first upper tether and a second upper tether according to the present invention, for each embodiment.
- first and second may be used to describe various components, but the components should not be limited by the terms. The above terms are only for the purpose of distinguishing one component from other components, for example, without departing from the scope of the rights according to the concept of the present invention, the first component may be referred to as the second component, and similarly the second component may also be referred to as a first component.
- a control unit may be implemented through an algorithm configured to control the operation of various components of a vehicle or a nonvolatile memory (not shown) configured to store data related to a software command for reproducing the algorithm, and a processor (not shown) configured to perform an operation described below using data stored in the corresponding memory.
- the memory and the processor may be implemented as separate chips.
- the memory and processor may be implemented as a single chip integrated with each other.
- the processor may take the form of one or more processors.
- the seat airbag for a vehicle 100 includes a side cushion 100 that is deployed to protrude forward from a seatback 10 constituting a vehicle seat and covers and protects the side of a passenger 20 after deployment; a front cushion 200 that is deployed to protrude from the side cushion 100 to the front of the passenger 20 and covers and protects the front of the passenger 20 after deployment; an upper tether 300 that is coupled to connect an upper portion of the seatback 10 and the side cushion 100 and the front cushion 200 , and is unfolded in a plane of a predetermined size to restrain the development of the side cushion 100 and the front cushion 200 when the side cushion 100 and the front cushion 200 are deployed; and a lower tether 400 that is coupled to connect a lower portion of the seatback 10 and the front cushion 200 , and is unfolded in a plane of a predetermined size to prevent the front cushion 200 from being lifted, and to restrain the development of the front cushion 200 when the front cushion 200 is deployed.
- the airbag according to the present invention is a configuration in which the side cushion 100 is deployed to be protruded from the seatback 10 , the side cushion 100 is first deployed, and then the front cushion 200 is sequentially deployed from the side cushion 100 and unfolded.
- the seat can be moved and rotated, and in particular, it has the advantage of being suitable for use in autonomous vehicles with various seating conditions for passengers.
- the tether for restraining the deployment of the side cushion 100 and the front cushion 200 is a cotton tether having a predetermined area rather than a general string-shaped tether.
- the embodiment is a configuration that restrains the deployment of the side cushion 100 and the front cushion 200 using the strong restraint force of the upper tether 300 and the lower tether 400 .
- it can effectively restrain both the lateral and frontal and diagonal behaviors of the passenger, thereby further strengthening the protection effect of passengers.
- the side cushion 100 covers and protects all of a head 21 , a shoulder 22 , a chest 23 , an abdomen 24 , and a pelvis 25 on the side of the passenger 20 when deployed.
- the front cushion 200 simultaneously covers and protects the area from the shoulder 21 to the abdomen 24 on the front of the passenger 20 when deployed.
- the side cushion 100 and the front cushion 200 can both cover and protect the portion of the shoulder 22 with relatively high rigidity among the body parts of the passenger 20 , thereby reducing the passenger's injury as much as possible.
- the inflator that injects airbag gas is fixedly coupled to the seatback frame constituting the seatback 10 , and the airbag gas generated when the inflator is exploded is supplied in the order of the side cushion 100 and the front cushion 200 , and thereby, the side cushion 100 is deployed first and then the front cushion 200 is deployed by the pressure of the airbag gas.
- a reference numeral 710 is an inlet 710 through which airbag gas is supplied from the side cushion 100 , and a first separator 500 that divides the inner space of the side fusion 100 while determining the thickness of the deployed cushion is installed in combination with the side cushion 100 inside the side cushion 100 .
- a plurality of first vent holes 510 for controlling the flow of airbag gas is formed in the first separator 500 .
- connection passage 730 formed with a relatively large hole for connection with the front cushion 200 is formed.
- a second separator 600 that determines the thickness of the deployed cushion is installed in combination with the side cushion 100 .
- a second vent hole 610 for controlling the flow of the supplied airbag gas is formed in the second separator 600 .
- the side cushion 100 When the inflator explodes, the side cushion 100 must be deployed first and then the front cushion 200 must be deployed. Thus, a large amount of airbag gas must first be supplied to the side cushion 100 , and for this purpose, the first vent hole 510 is formed in a plurality that is greater than the number of the second vent hole 610 , in particular, the total cross-sectional area of the first vent hole 510 is formed larger than the total cross-sectional area of the second vent hole 610 .
- the side cushion 100 is first deployed and then the front cushion 200 is deployed through tuning of the numbers and the cross-sectional areas of holes of the first and second vent holes 510 and 610 .
- the front cushion 200 is first inflated and deployed, the front cushion 200 is caught between the passenger 20 and the vehicle door 30 , or between the passenger 20 and the center console 40 so that the probability of deployment failure due to interference is increased. To prevent this, by turning the total cross-sectional area of holes and the numbers of the first and second vent holes 510 and 610 , the side cushion 100 is deployed first and then the front cushion 200 can be deployed.
- a reference numeral 740 denotes a sewing line 740 for coupling the side cushion 100 and the front cushion 200 around the connection passage 730 .
- the folding storage structure of the front cushion 200 and the deployment structure of the side cushion 100 and the front cushion 200 will be described in more detail with reference to FIGS. 5 to 7 .
- the front cushion 200 is sewing connected to the front portion 720 of the side cushion 100 based on the deployed state of the side cushion 100 , and at the front portion 720 of the side cushion 100 a cushion storage space 810 is provided inside the side cushion 100 .
- the front cushion 200 is inserted into the cushion storage space 810 in a folded state (left figure in FIG. 6 ), and then protrudes out of the cushion storage space 810 by airbag gas and is deployed to the front of the passenger 20 (right figure in FIG. 6 ).
- the inflator explodes, and the side cushion 100 is first deployed from the seatback 10 by the pressure of the airbag gas generated during the explosion of the inflator, and after the deployment of the side cushion 100 begins, the deployment of the front cushion 200 begins with a time difference.
- the deployment of the side cushion 100 starts from the seatback 10 .
- the front portion 720 of the side cushion 100 that has started to be deployed is located in front of the passenger 20 (left figure in FIG. 6 )
- the airbag gas is introduced into the cushion storage space 810 through the second vent hole 610 of the second separator 600 , and the front cushion 200 accommodated in a folded state in the cushion storage space 810 starts to be deployed while protruding out of the cushion storage space 810 by the pressure of the airbag gas introduced into the cushion storage space 810 .
- the front cushion 200 protrudes toward the front of the passenger 20 seated on the seat, and the deployment is completed (the right figure in FIG. 6 ).
- the front cushion 200 accommodated in the folded state in the cushion storage space 810 it is preferable that the front cushion 200 is bellow folded and is accommodated in the cushion storage space 810 .
- the side cushion 100 and the front cushion 200 are sewn and coupled along the circumference of the connection passage 730 positioned at the front portion 720 of the side cushion 100 , so that the side cushion 100 and the front cushion 200 are connected to each other.
- the space up to the connection passage 730 based on the second separator 600 becomes the cushion storage space 810 , and the cushion storage space 810 is connected to the front cushion 200 through the connection passage 730 .
- the deployed side cushion 100 can cover and protect all of the head 21 , the shoulder 22 , the chest 23 , the abdomen 24 , and the pelvis 25 on the side of the passenger 20 as described above. To this end, from the top to the bottom based on deployed state, the side cushion 100 can be vertically divided into a head protection area 100 a , a shoulder protection area 100 b , a chest protection area 100 c , an abdominal protection area 100 d , and a pelvic protection area 100 e.
- a reference line C 1 is determined as the line connecting the head protection area 100 a and the pelvic protection area 100 e up and down in the front of the side cushion 100 , the area protruding toward the front of the reference line C 1 becomes the front portion 720 of the side cushion 100 on which the connection passage 730 is positioned, and one side of the front cushion 200 is coupled to the front portion 720 of the side cushion 100 through sewing coupling.
- the second separator 600 may be installed to match the reference line C 1 or may be installed to be positioned in front of the reference line C 1 within a range that sufficiently secures the cushion storage space 810 .
- FIG. 5 a configuration in which the second separator 600 is installed so as to be positioned in front of the reference line C 1 is shown as an example.
- the reason why the second separator 600 is installed to match the reference line C 1 or is installed to be located in front of the reference line C 1 within a range that can sufficiently secure the cushion storage space 810 is for continuously maintaining the folded state when the front cushion 200 is bellow folded and accommodated in the cushion storage space 810 , and is for preventing a phenomenon in which the front cushion 200 that is bellow folded and accommodated in the cushion storage space 810 flows down to the rear side (in the direction of the seatback) of the side cushion 100 .
- the size of the cushion storage space 810 becomes excessively larger than the size of the bellow folded front cushion 200 .
- the front cushion 200 accommodated in the cushion storage space 810 flows down to the rear side (the direction in which the seatback is located) of the side cushion 100 , and the folding state is released.
- the folding state is released, the deployment operation of the front cushion 200 is not smooth, so that a deployment failure of the front cushion 200 may occur.
- the second separator 600 it is preferable to install the second separator 600 to match the reference line C 1 or to locate in front of the reference line C 1 within a range that can sufficiently secure the cushion storage space 810 .
- the cushion storage space 810 positioned at the front portion 720 of the side cushion 100 may be formed by the second separator 600 that is installed in parallel with a vertical sewing line 740 a coupling the side cushion 100 and the front cushion 200 .
- the cushion storage space 810 may be formed by a plurality of second separators 600 that is installed in a horizontal direction with respect to the vertical sewing line 740 a as shown in (A) of FIG. 7 or formed by a plurality of second separators 600 that is installed in a diagonal direction with respect to the vertical sewing line 740 a as shown in (B) and (C) of FIG. 7 , or formed by a plurality of coupling points P 1 that is coupled to connect both sides of the side cushion 100 in the rear position of the connection passage 730 (direction in which the seatback is located) as shown in (D) of FIG. 7 .
- the coupling point P 1 may be a sewing coupling or coupling using an adhesive by bringing the inner portion (one surface facing the passenger) and the outer portion (the opposite side of the inner portion) of the side chamber 100 into contact.
- FIG. 8 shows the deployment process of the side cushion 100 and the front cushion 200 .
- the side cushion 100 and the front cushion 200 begin to be deployed by the pressure of the airbag gas, and the upper tether 300 also begins to unfold.
- the front cushion 200 is restrained within a rotation radius r 1 of the upper tether 300 by the restraint of the upper tether 300 , and the front cushion 200 is pushed forward by the forward deployment force (arrow F 1 ) of the side cushion 100 .
- An arrow L 1 is the maximum length of the upper tether 300 .
- the deployment of the side cushion 100 is completed, and the front cushion 200 is bent toward the passenger 20 by the tension F 2 of the upper tether 300 to reach the front of the passenger 20 .
- Arrow M 1 the side cushion 100 covers and protects the side of the passenger 20
- the front cushion 200 covers and protects the front of the passenger 20 .
- the side cushion 100 includes a first side cushion 110 that is deployed in the space between a vehicle door 30 and the side of the passenger 20 at one side of the seatback 10 , and a second side cushion 120 that is deployed into a space between the center console 40 and the side of the passenger 20 at the other side of the seatback 10 .
- the front cushion 200 includes a first front cushion 210 that is extendedly deployed from the first side cushion 110 toward the front of the passenger 20 , and a second front cushion 220 that is extendedly deployed from the second side cushion 120 toward the front of the passenger 20 .
- the first front cushion 210 and the second front cushion 220 When the first front cushion 210 and the second front cushion 220 are deployed, their ends are in contact with each other and are connected to the left and right. Thus, it is possible to further enhance the protective effect of the passenger 20 with a more solid support.
- the upper tether 300 is configured to avoid an area that causes harm to the neck of the passenger 20 while passing over the shoulder 22 of the passenger 20 , that is, to deploy to an area that does not harm the neck of the passenger 20 .
- the upper tether 300 according to the present invention is formed so that the unfolded shape becomes a triangular shape when deployed. Any one vertex is fixedly coupled to the upper portion of the seatback 10 , one of the outer sides is attached to the inner surface of the side cushion 100 , and one side facing the front is sewn to the upper surface of the front cushion 200 .
- the upper tether 300 includes a first upper tether 310 that is coupled to connect the upper portion of the seatback 10 , and the inner surface of the first side cushion 110 and the upper surface of the first front cushion 210 , and a second upper tether 320 that is coupled to connect the upper portion of the seatback 10 , and the inner surface of the second side cushion 120 and the upper surface of the second front cushion 220 .
- the tension of the first upper tether 310 increases.
- the restraint force of the first side cushion 110 and the first front cushion 210 by the first upper tether 310 increases.
- first upper tether 310 and the second upper tether 320 When the first upper tether 310 and the second upper tether 320 are deployed, they can be deployed in a shape of II as shown in FIG. 2 or an X-shape as in FIG. 7 or a V-shape as shown in FIG. 8 .
- the tension of the first upper tether 310 and the second upper tether 320 is increased compared to when deployed in a II shape, thereby more effective in restraint of passengers.
- the tension of the first upper tether 310 and the second upper tether 320 is increased compared to when deployed in a II shape or V shape, so that the passenger can be restrained most effectively.
- the lower tether 400 is formed to have a triangular unfolded shape when deployed. Any one vertex is fixedly coupled to the lower portion of the seatback 10 (a stud that fixes the inflator at the lower portion of the seatback frame or the lower portion of the seatback frame), and one side facing the front is sewn and coupled to the bottom surface of the front cushion 200 .
- the lower tether 400 is coupled with the bottom surface of the front cushion 200 to prevent the front cushion 200 from being lifted upward when the front cushion 400 is deployed, through which the restraint power of the front cushion 200 can be further strengthened.
- the lower tether 400 is formed as a surface than the conventional tether formed in the form of a string, so that the lower tether 400 can exert a stronger restraint force, so that there is advantage of more securely protecting the passenger 20 .
- the lower tether 400 is configured to include a first lower tether 410 that is coupled to connect the lower portion of the seatback 10 and the bottom surface of the first front cushion 210 , and a second lower tether 420 that is coupled to connect the lower portion of the seatback 10 and the bottom surface of the second front cushion 220 .
- the seat airbag for a vehicle is a configuration in which the side cushion 100 is deployed to protrude forward from the seatback 10 to protect the side of the passenger 20 , and the front cushion 200 protrudes from the side cushion 100 in front of the passenger 20 to protect the front of the passenger 20 .
- the side cushion 100 is deployed to protrude forward from the seatback 10 to protect the side of the passenger 20
- the front cushion 200 protrudes from the side cushion 100 in front of the passenger 20 to protect the front of the passenger 20 .
- it can be applied to various autonomous vehicles in which the movement and rotation of the seat and the seating condition of the passenger are various.
- the embodiment according to the present invention is configured with the upper tether 300 and the lower tether 400 that have a predetermined area in order to exert a strong restraint force restraining the deployments of the side cushion 100 and the front cushion 200 .
- the embodiment according to the present invention is configured with the upper tether 300 and the lower tether 400 that have a predetermined area in order to exert a strong restraint force restraining the deployments of the side cushion 100 and the front cushion 200 .
- the embodiment according to the present invention is a configuration in which both the side cushion 100 and the front cushion 200 can cover and protect the portion of the shoulder 22 having relatively high rigidity among the body parts of the passenger 20 .
- both the side cushion 100 and the front cushion 200 can cover and protect the portion of the shoulder 22 having relatively high rigidity among the body parts of the passenger 20 .
- the embodiment according to the present invention is a configuration in which the first separator 500 having the first vent hole 510 is installed inside the side cushion 100 , the second separator 600 having the second vent hole 610 is installed in the connection portion of the side cushion 100 and the front cushion 200 , and the total cross-sectional area of the first vent hole 510 is larger than the total cross-sectional area of the second vent hole 610 .
- the embodiment according to the present invention is a configuration in which the cushion storage space 810 capable of accommodating the front cushion 200 is provided at the front portion 720 connected to the front cushion 200 in the side cushion 100 , and the bellow folded front cushion 200 is inserted and accommodated into the cushion storage space 810 .
- the cushion storage space 810 capable of accommodating the front cushion 200 is provided at the front portion 720 connected to the front cushion 200 in the side cushion 100 , and the bellow folded front cushion 200 is inserted and accommodated into the cushion storage space 810 .
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- Mechanical Engineering (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- Air Bags (AREA)
Abstract
Description
Claims (11)
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KR1020200057390A KR20210139092A (en) | 2020-05-13 | 2020-05-13 | Seat air bag apparatus for vehicle |
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US20210354654A1 US20210354654A1 (en) | 2021-11-18 |
US11702028B2 true US11702028B2 (en) | 2023-07-18 |
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EP (1) | EP3909816B1 (en) |
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JP7280138B2 (en) * | 2019-07-22 | 2023-05-23 | 株式会社Subaru | passenger protection device |
KR102789237B1 (en) * | 2019-12-17 | 2025-03-28 | 현대모비스 주식회사 | Airbag apparatus for vehicle |
KR20220031431A (en) * | 2020-09-04 | 2022-03-11 | 현대모비스 주식회사 | Seat airbag device for vehicle |
KR20220048805A (en) * | 2020-10-13 | 2022-04-20 | 현대자동차주식회사 | Air bag device |
US20220388472A1 (en) * | 2021-06-03 | 2022-12-08 | Hyundai Mobis Co., Ltd. | Seat airbag for vehicle |
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EP3909816B1 (en) | 2023-07-19 |
CN113734092B (en) | 2023-09-29 |
KR20210139092A (en) | 2021-11-22 |
US20210354654A1 (en) | 2021-11-18 |
CN113734092A (en) | 2021-12-03 |
EP3909816A1 (en) | 2021-11-17 |
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